Moradi Hossein, Simoff Ivailo, Bartish Galyna, Nygård Odd
Department of Cell Biology, Arrhenius Laboratories E5, Stockholm University, 106 91 Stockholm, Sweden.
Mol Genet Genomics. 2008 Oct;280(4):337-50. doi: 10.1007/s00438-008-0369-7. Epub 2008 Aug 27.
The aim of this study was to analyze the functional importance of the C-terminus of the essential yeast ribosomal protein L5 (YrpL5). Previous studies have indicated that the C-terminal region of YrpL5 forms an alpha-helix with a positively charged surface that is involved in protein-5S rRNA interaction. Formation of an YrpL5.5S rRNA complex is a prerequisite for nuclear import of YrpL5. Here we have tested the importance of the alpha-helix and the positively charged surface for YrpL5 function in Saccharomyces cerevisiae using site directed mutagenesis in combination with functional complementation. Alterations in the sequence forming the putative alpha-helix affected the functional capacity of YrpL5. However, the effect did not correlate with a decreased ability of the protein to bind to 5S rRNA as all rpL5 mutants tested were imported to the nucleus whether or not the alpha-helix or the positively charged surface were intact. The alterations introduced in the C-terminal sequence affected the growth rate of cells expressing mutant but functional forms of YrpL5. The reduced growth rate was correlated with a reduced ribosomal content per cell indicating that the alterations introduced in the C-terminus interfered with ribosome assembly.
本研究的目的是分析酵母必需核糖体蛋白L5(YrpL5)C末端的功能重要性。先前的研究表明,YrpL5的C末端区域形成一个带有正电荷表面的α螺旋,该表面参与蛋白质与5S rRNA的相互作用。YrpL5与5S rRNA复合物的形成是YrpL5核输入的先决条件。在这里,我们使用定点诱变结合功能互补的方法,测试了α螺旋和带正电荷表面对酿酒酵母中YrpL5功能的重要性。形成假定α螺旋的序列改变影响了YrpL5的功能能力。然而,这种影响与蛋白质结合5S rRNA能力的降低无关,因为所有测试的rpL5突变体无论α螺旋或带正电荷表面是否完整,都能被导入细胞核。C末端序列中引入的改变影响了表达突变但具有功能形式的YrpL5的细胞的生长速率。生长速率的降低与每个细胞核糖体含量的减少相关,表明C末端引入的改变干扰了核糖体组装。